An enhanced design of a 5G MIMO antenna for fixed wireless aerial access

被引:0
|
作者
Faris A. Almalki
Marios C. Angelides
机构
[1] Taif University,Department of Computer Engineering, College of Computers and Information Technology
[2] Brunel University London,Brunel Design School, College of Engineering, Design and Physical Sciences
来源
Cluster Computing | 2022年 / 25卷
关键词
5G MIMO antenna; Tethered aerial aerostat; Fixed wireless access;
D O I
暂无
中图分类号
学科分类号
摘要
A recent market prediction is that 5G Fixed Wireless Access (FWA) will more than double over the next five years and trials at the same period in London suggest promising results. However, the shift to 5G FWA has raised a new set of research challenges in relation to speed of deployment and re-deployment, coverage, power consumption, end user mobility and last mile connectivity, to name just a few, because of the much higher expectations. A recent review reveals that key 5G Physical Layer technologies that will enable wide mobile and FWA have not kept up pace. In response to some of those research challenges, this paper presents the design of a 5G Multiple Input Multiple Output (MIMO) Antenna that is mounted on a tethered aerostat, and the combination of which serves as a 5G FWA aerial station. The antenna design features several novelties and the aerial station can provide last mile connectivity to a wide coverage footprint, with moderate power consumption and operating at high speeds. Both the evaluation of the antenna performance using several key performance indicators and the validation of the aerial station as a 5G FWA in a wireless sensor network (WSN) proof-of-concept application reveal efficiency gains.
引用
收藏
页码:1591 / 1606
页数:15
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